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用辐照花粉对玉米进行“卵转化”的尝试。

Attempted "egg transformation" in Zea mays L., using irradiated pollen.

机构信息

Department of Horticultural Sciences, New York State Agricultural Experiment Station, Cornell University, 14456, Geneva, NY, USA.

出版信息

Theor Appl Genet. 1984 Jun;68(3):269-75. doi: 10.1007/BF00266902.

Abstract

Experiments were conducted to determine if "egg transformation" could be achieved in Zea mays L. as described by Pandey in Nicotiana L. Multiple recessive and multiple dominant marker stocks were employed, as well as a tester and a donor line for the "En" transposable element. Recipient tester females were pollinated with dominant donor pollen, which was applied in several treatment combinations. The pollination treatments included: 1) pollen irradiated at 20, 30, 40, 80, and 100 Krad; 2) pollen irradiated with the same doses, mixed with non-irradiated recipient pollen; 3) pollen irradiated at 80 Krad, followed by self pollination delayed 18 h; 4) non-irradiated donor pollen mixed with non-irradiated recipient pollen. Zero seed were produced from 100 pollinations with irradiated pollen. There were 258 pollinations made with irradiated donor plus self pollen mixtures, producing over 21,300 seed. Of these seed, 3 were unexpected. One was clearly from pollen contamination, one was clearly derived from a pre-meiotic mutation, and the third occurred as a mutant sector in the seed's endosperm. There were 56 pollinations with non-irradiated pollen mixtures, producing over 5,000 seed. Among these seed, there were 7 unexpected seed. Three of these were clear-cut cases of heterofertilization. Four progeny were dominant for all seed and seedling markers except one endosperm marker. These cases appear to represent spontaneous recessive endosperm mutations. More than 59,000 potential transformation events were screened producing only 6 apparent mutations. It is concluded that if egg transformation occurs in Zea mays, it is a very rare event, and is not likely to be useful in corn improvement.

摘要

进行了实验以确定 Pandey 在 Nicotiana L. 中描述的“卵转化”是否可以在 Zea mays L. 中实现。使用了多个隐性和显性标记品系,以及“En”可转座元件的测试和供体系。受体测试雌性与显性供体花粉授粉,花粉以几种处理组合进行应用。授粉处理包括:1)在 20、30、40、80 和 100 Krad 下辐照的花粉;2)用相同剂量辐照的花粉与未辐照的受体花粉混合;3)在 80 Krad 下辐照,然后延迟 18 小时自花授粉;4)未辐照的供体花粉与未辐照的受体花粉混合。用辐照花粉进行了 100 次授粉,没有产生一粒种子。用辐照供体加自花粉混合物进行了 258 次授粉,产生了超过 21300 粒种子。这些种子中,有 3 粒是意外的。一个显然是花粉污染的结果,一个显然是减数分裂前突变的结果,第三个是种子胚乳中的突变区。用未辐照的花粉混合物进行了 56 次授粉,产生了超过 5000 粒种子。在这些种子中,有 7 粒是意外的。其中有 3 粒是明显的异花授粉的情况。4 个后代除了一个胚乳标记外,对所有种子和幼苗标记都是显性的。这些情况似乎代表自发的隐性胚乳突变。筛选了超过 59000 个潜在的转化事件,仅产生了 6 个明显的突变。结论是,如果卵转化发生在玉米中,这是一个非常罕见的事件,不太可能用于玉米改良。

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